论文标题

测量Gaia DR3 RVS Spectra中的8621Å漫射星际带:通过在恒星类型上边缘化获得干净的目录

Measuring the 8621 Å Diffuse Interstellar Band in Gaia DR3 RVS Spectra: Obtaining a Clean Catalog by Marginalizing over Stellar Types

论文作者

Saydjari, Andrew K., Uzsoy, Ana Sofía M., Zucker, Catherine, Peek, J. E. G., Finkbeiner, Douglas P.

论文摘要

弥漫性星体带(DIB)是与星际灰尘相关的广泛吸收特征,可以用作化学和运动示踪剂。恒星光谱中DIB的常规测量因观测和最佳拟合模型之间的残差而变得复杂。为了克服这一点,我们同时将光谱与恒星,灰尘和残留成分的组合建模,并在组件的关节分布上进行完整的后期。通过将每个组件建模为数据空间中的高维高斯分布(观察到的频谱)来获得该分解 - 我们称之为“边缘化的分析数据空间高斯为组件分离的推断”(madgics)的方法。我们使用恒星组件的数据驱动的先验,这避免了缺失的恒星特征未被合成光谱良好。该技术提供了统计上严格的不确定性和检测阈值,这些阈值是在低信噪状态下工作所需的,这对于尘土飞扬的视线而言是司空见惯的。我们重新处理所有公共Gaia DR3 RVS光谱,并提供了改进的8621ÅDIB目录,没有可检测的恒星线污染。 We constrain the rest-frame wavelength to $8623.14 \pm 0.087$ Å (vacuum), find no significant evidence for DIBs in the Local Bubble from the $1/6^{\rm{th}}$ of RVS spectra that are public, and show unprecedented correlation with kinematic substructure in Galactic CO maps.我们通过合成注射测试验证目录,报告的不确定性和偏见。我们认为,在存在复杂的光谱污染的情况下,Madgics为大规模光谱线测量提供了一个可行的途径。

Diffuse interstellar bands (DIBs) are broad absorption features associated with interstellar dust and can serve as chemical and kinematic tracers. Conventional measurements of DIBs in stellar spectra are complicated by residuals between observations and best-fit stellar models. To overcome this, we simultaneously model the spectrum as a combination of stellar, dust, and residual components, with full posteriors on the joint distribution of the components. This decomposition is obtained by modeling each component as a draw from a high-dimensional Gaussian distribution in the data-space (the observed spectrum) -- a method we call "Marginalized Analytic Data-space Gaussian Inference for Component Separation" (MADGICS). We use a data-driven prior for the stellar component, which avoids missing stellar features not well-modeled by synthetic spectra. This technique provides statistically rigorous uncertainties and detection thresholds, which are required to work in the low signal-to-noise regime that is commonplace for dusty lines of sight. We reprocess all public Gaia DR3 RVS spectra and present an improved 8621 Å DIB catalog, free of detectable stellar line contamination. We constrain the rest-frame wavelength to $8623.14 \pm 0.087$ Å (vacuum), find no significant evidence for DIBs in the Local Bubble from the $1/6^{\rm{th}}$ of RVS spectra that are public, and show unprecedented correlation with kinematic substructure in Galactic CO maps. We validate the catalog, its reported uncertainties, and biases using synthetic injection tests. We believe MADGICS provides a viable path forward for large-scale spectral line measurements in the presence of complex spectral contamination.

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